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Modelling a man-portable air-defence (MANPAD) system with a conical scan two-colour infrared (IR) seeker

机译:使用锥形扫描双色红外(IR)搜寻器对便携式防空(MANPAD)系统建模

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The use of flares of flares against 1st and 2nd generation man-portable air-defence (MANPAD) systems proved to be very effective. This naturally led to the development of counter-countermeasures (CCM) that could be incorporated into the MANPADs infrared (IR) seeker. One possible CCM is two-colour where the seeker detects in two separate IR bands. It is designed to exploit the different spectral characteristics of the target and flare. In this paper we describe the modelling process of a two-colour conical scan (conscan) IR seeker using CounterSim, a missile engagement and countermeasure simulation software tool developed by Chemring Countermeasures Ltd. It starts by explaining the signal processing needed to be able to reject the flare and track the target. The MANPAD model is then used in an engagement with a fast jet model and a transport aircraft model. Flares are first deployed reactively then released throughout an engagement to investigate the effect of flare release time and the viability of pre-emptive countermeasures.
机译:在第一代和第二代便携式防空系统(MANPAD)上使用火炬是非常有效的。这自然导致了反措施(CCM)的发展,可以将其纳入MANPAD的红外(IR)搜寻器。一种可能的CCM是双色的,其中搜寻器在两个单独的IR波段中进行检测。它旨在利用目标和耀斑的不同光谱特征。在本文中,我们描述了使用CountingSim(一种由Chemringmeasure Ltd.开发的导弹啮合和对策模拟软件工具)进行的双色锥形扫描(conscan)IR导引头的建模过程。首先说明了能够拒绝的信号处理。耀斑并跟踪目标。然后将MANPAD模型与快速喷气飞机模型和运输飞机模型结合使用。火炬首先被反应性部署,然后在整个战斗中释放,以研究火炬释放时间的影响和先发制人对策的可行性。

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